A scanning module includes a contact image sensor, a movable base and an elasticity unit that is assembled between the contact image sensor and the base. When the assembly of the contact image sensor and the elasticity unit is placed under a glass window of a scanner, the contact image sensor and elasticity unit can be moved relatively. Thus, the scanning module can be easily assembled and decided a reduced volume to satisfy the miniaturized requirement.
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8. A scanning module moving along a guide rod and contacting an underside of a glass window so as to scan a document, the scanning module comprising:
a contact image sensor for scanning the document and having a top surface and a bottom surface;
a base, which has a first side facing the contact image sensor and a second side adjacent to the first side, moving along the guide rod; and
an elasticity unit fixed to the second side of the base and contacting the bottom surface of the contact image sensor, wherein the elasticity unit and the contact image sensor are moveable relative to each other wherein the contact image sensor and the elasticity unit are connected with each other by engagement of protrusions and grooves.
1. A scanning module moving along a guide rod and contacting an underside of a glass window so as to scan a document, the scanning module comprising:
a contact image sensor for scanning the document and having a top surface and a bottom surface;
a base, which has a first side facing the contact image sensor and a second side adjacent to the first side, moving along the guide rod; and
an elasticity unit fixed to the first side of the base and contacting the bottom surface of the contact image sensor, wherein the elasticity unit and the contact image sensor are moveable relative to each other, wherein the contact image sensor and the elasticity unit are connected with each other by engagement of protrusions and grooves.
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The present invention relates to a scanning module, and in particular to a scanning module used in a CIS type scanner and composed of a contact image sensor, a movable base and an elasticity unit.
For a CIS type scanner, the assembly of a contact image sensor and a carrying base can be defined as a scanning module. Conventionally, the contact image sensor is fixed to the carrying base, and a top of the contact image sensor is engaged to an underside of a glass window. The carrying base is movable along a guide rod so as to scan and receive images during the movement of the scanning module.
U.S. Pat. No. 5,801,851 discloses an improvement of a CIS type scanning module and the contact image sensor is installed in a nest and a spring is biased between the contact image sensor and the nest. The spring urges the contact image sensor against an underside of a glass window.
In volume perspective, the nest in the above U.S. patent can receive the contact image sensor so that the volume of the contact image sensor and the nest occupy a large space.
In design perspective, because the flanges 15 of the carrying base 11 contacts the underside of the glass window 18, a downward force is applied on the carrying base 11. So, when every part of the carrying base 11 is made as a one-piece member by the same material, and the contact image sensor 16 is fixed to the carrying base 11, the flanges 15 and the carrying base 11 have complicated deformation under force and the deformation is difficult to be calculated and predicted. For the designers, they cannot calculate and choose correct features of the material to be used so that a try-and-error method is used to choose the factors. However, the method does not meet the requirements of design.
In the transmitting perspective, because the gap has to be maintained between the carrying base 11 and the glass window 18, the contact image sensor 16 has to be fixed on the carrying base 11 such that the elasticity efficient of the carrying base 11 becomes large. Therefore, when the carrying base 11 deforms slightly, a huge bounce force is generated and pushes the carrying base 11 to firmly contact the glass window 18. This increases the friction between the glass window 18 and the carrying base 11 and a larger transmit force is required. This will waste too much energy and the carrying base 11 is difficult to move.
In the perspective of getting material, the flanges 15 need a material that has low elasticity efficient so that it is easily to be deformed and the pads 17 should be made by the material that has low friction efficient so that the pads 17 may move smoothly. However, in practical situation, the pads 17 and the flanges 15 are made by the same material and there is no proper material with low price existed.
In the perspective of the whole volume, the length of the carrying base 11 is roughly the same as that of the contact image sensor 16, so that both of which occupy a large space which does not meet the miniaturized requirement of the trend of design.
Besides, if the contact image sensor 16 is not fixed on the carrying base 11, or it is positioned by force-fitted arrangement, after the carrying base 11 is deformed, it cannot firmly contact the contact image sensor 16. The contact image sensor 16 will move downward and away from the glass window 18. In this situation, the gap between the glass window 18 and the contact image sensor 16 cannot be fixed and results in poor scanning feature.
The main object of the present invention is to provide a scanning module that is composed of a base and a contact image sensor, and both of which are easily to be designed and assembled.
Another object of the present invention is to provide a scanning module that includes a base and a contact image sensor and occupies less space.
Yet another object of the present invention is to provide a scanning module wherein the gap between the base and the contact image sensor is fixed.
In order to achieve the objects mentioned above, the present invention provides an elasticity unit between the base and the contact image sensor, and the contact image sensor is engaged with the elasticity unit so that the base and the contact image sensor can be moved relatively. By this way, the contact image sensor can be easily assembled and the gap between the base and the contact image sensor can be fixed.
Furthermore, by reducing the volume of the base and extending outward the elasticity unit from the two sides of the base to contact the contact image sensor, a compact assembly is obtained.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings which show, for purposes of illustration only, preferred embodiments in accordance with the present invention.
The contact image sensor 21 has a top surface 22 and a bottom surface 23 which has protrusions 24, 25 at two ends thereof.
The base 31 has a guide portion 32 which can be a sleeve as shown.
The two elasticity units 41 are located at two opposite sides of the base 31. In particular, each elasticity unit 41 has a fixed end 42 for being fixed to the base 31, and a free end 43 which is located away from the base 31. The free ends 43 have grooves 44 defined therein and each groove 44 has an open end.
The slidable units 51 have a lower friction efficient and may be made of plates such as Teflon plates. It is to be noted that the slidable units 51 can be omitted if the contact image sensor 21 can be moved along the glass window.
The assembly of the above-mentioned parts is called a scanning module, and especially a scanning module of the CIS type scanner.
The bottom surface 23 of the contact image sensor 21 is located corresponding to the free ends 43 of the elasticity units 41, and the top surface 22 is located corresponding to the glass window 62 so that the slidable unit 51 is attached to the glass window 62.
The grooves 44 of the elasticity units 41 are opened and the protrusions 24, 25 of the contact image sensor 21 are engaged with the grooves 44. So, when the contact image sensor 21 urges the elasticity units 41, the free ends 43 move toward the two ends of the contact image sensor 21.
By this arrangement, the contact image sensor 21 can be assembled with the elasticity units 41 which generate a bounce force to urge the contact image sensor 21 onto the glass window 62.
Along with the movement of the base 31 on the guide rod 61, the elasticity units 41 and the contact image sensor 21 move along the guide rod 61 so as to scan objects.
The free end 43 of the other elasticity unit 41 as shown in the left side of the figure has two grooves 44 which has an open end and the protrusions 25 are inserted in the grooves 44.
The contact image sensor 21 and the elasticity units 41 having the grooves 44 are able to move relatively.
Although there are two free ends 43 on the two elasticity units so as to evenly support the contact image sensor 21, only one free end can be made and functions the same. In this situation, the elasticity unit 41 on the left side in
It is to be noted that the elasticity units 41, the base 31 and the guide portion 32 can be made as a one-piece member. In this situation, cheap items can be easily made by the method of plastic ejection molding. The elasticity unit 41 as shown in
In the above mentioned embodiments, the contact image sensor 21 can be connected to the elasticity units 41 by bolts or by way of engagement, and the contact image sensor 21 can be moved relatively to at least one elasticity unit 41 so that a less friction is obtained between the contact image sensor 21 and the glass window 62. Accordingly, the present invention is easily assembled and designed, and a fixed gap is maintained between the contact image sensor 21 and the glass window 62.
The base 31 is used to let the guide rod 61 extend and the elasticity unit be fixed thereto. The area between the two sides of the base 31 to the contact image sensor 21 is not used so as to reduce the volume.
While we have shown and described the embodiments in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.
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Sep 30 2002 | SHENG, THOMAS | Avision Inc | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 013373 | /0421 | |
Sep 30 2002 | HSIAO, HYMAN | Avision Inc | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 013373 | /0421 | |
Oct 07 2002 | Avision Inc. | (assignment on the face of the patent) | / |
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